A High Energy Density Pulsed Power Supply for Micro EDM of High Aspect Ratio Holes

Peiyao Cao, H. Tong, Yong Li, Yulan Zhu
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Abstract

In micro EDM (Electrical Discharge Machining), it is difficult to guarantee machining efficiency and accuracy when further increasing the aspect ratio of micro-holes due to poor circulation of working fluid and removal of debris. In order to increase the ratio of material vaporization erosion and reduce the ejection of large debris caused by material melting, this study proposes a high energy density pulsed power supply that increases the peak discharge current by adding energy-storage inductors with designed charging and discharging control. Machining micro holes of diameters from 100 µm to 200 µm with aspect ratios of 10:1, 20:1, and 30:1 show that when the inductance increases from 4.7 µH to 20 µH, the peak current increases by more than two times and the machining efficiency improves by approximately 30%, and the accuracy of the aperture consistency is enhanced, while the occurrence of micro-cracks on the machined surface is significantly reduced.
用于高纵横比孔微型放电加工的高能量密度脉冲电源
在微型放电加工(EDM)中,由于工作液循环和碎片清除不畅,在进一步提高微孔纵横比时很难保证加工效率和精度。为了提高材料汽化侵蚀率,减少材料熔化造成的大块碎片喷出,本研究提出了一种高能量密度脉冲电源,通过增加储能电感器,设计充放电控制,提高放电电流峰值。在加工直径为 100 µm 至 200 µm、纵横比为 10:1、20:1 和 30:1 的微孔时发现,当电感从 4.7 µH 增加到 20 µH 时,峰值电流增加了两倍多,加工效率提高了约 30%,孔径一致性的精度也得到了提高,同时加工表面微裂纹的发生率显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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